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платформа Дърво Точи Внимание dick deppert seifert wallenber samuelson nature materials 2004 обогатяване сгъваем доведе до

Synthesis of branched 'nanotrees' by controlled seeding of multiple  branching events | Nature Materials
Synthesis of branched 'nanotrees' by controlled seeding of multiple branching events | Nature Materials

Synthesis of branched 'nanotrees' by controlled seeding of multiple  branching events | Nature Materials
Synthesis of branched 'nanotrees' by controlled seeding of multiple branching events | Nature Materials

Structural properties of 〈111〉B -oriented III–V nanowires | Nature Materials
Structural properties of 〈111〉B -oriented III–V nanowires | Nature Materials

Synthesis of branched 'nanotrees' by controlled seeding of multiple  branching events | Nature Materials
Synthesis of branched 'nanotrees' by controlled seeding of multiple branching events | Nature Materials

Modulating Surface/Interface Structure of Emerging InGaN Nanowires for  Efficient Photoelectrochemical Water Splitting - Lin - - Advanced  Functional Materials - Wiley Online Library
Modulating Surface/Interface Structure of Emerging InGaN Nanowires for Efficient Photoelectrochemical Water Splitting - Lin - - Advanced Functional Materials - Wiley Online Library

A New Understanding of Auâ•'Assisted Growth of IIIâ•fiV Semiconductor  Nanowires<link href='#fn1'></lin
A New Understanding of Auâ•'Assisted Growth of IIIâ•fiV Semiconductor Nanowires<link href='#fn1'></lin

Semiconductor Nanowires: Epitaxy and Applications (Doctoral Thesis)
Semiconductor Nanowires: Epitaxy and Applications (Doctoral Thesis)

Heterotwin Zn 3 P 2 superlattice nanowires: the role of indium insertion in  the superlattice formation mechanism and their optical properties -  Nanoscale (RSC Publishing) DOI:10.1039/D0NR05852A
Heterotwin Zn 3 P 2 superlattice nanowires: the role of indium insertion in the superlattice formation mechanism and their optical properties - Nanoscale (RSC Publishing) DOI:10.1039/D0NR05852A

www.rsc.org/nanoscale
www.rsc.org/nanoscale

In situ TEM observation of the vapor–solid–solid growth of <00 [[1 with  combining macron]] > InAs nanowires - Nanoscale (RSC Publishing)
In situ TEM observation of the vapor–solid–solid growth of <00 [[1 with combining macron]] > InAs nanowires - Nanoscale (RSC Publishing)

Toward 3D Integration of 1D Conductors: Junctions of InAs Nanowires
Toward 3D Integration of 1D Conductors: Junctions of InAs Nanowires

Role of the Au/III-V interaction in the Au-assisted growth of III-V  branched nanostructures
Role of the Au/III-V interaction in the Au-assisted growth of III-V branched nanostructures

Detailed Scientific Programme (including all lecture and poster times)
Detailed Scientific Programme (including all lecture and poster times)

Recent advances in semiconductor nanowire heterostructures - CrystEngComm  (RSC Publishing)
Recent advances in semiconductor nanowire heterostructures - CrystEngComm (RSC Publishing)

Synthesis of branched 'nanotrees' by controlled seeding of multiple  branching events | Nature Materials
Synthesis of branched 'nanotrees' by controlled seeding of multiple branching events | Nature Materials

Structural properties of 〈111〉B -oriented III–V nanowires | Nature Materials
Structural properties of 〈111〉B -oriented III–V nanowires | Nature Materials

Nanowire Networks: Three‐Dimensional SnO2 Nanowire Networks for  Multifunctional Applications: From High‐Temperature Stretchable Ceramics to  Ultraresponsive Sensors (Adv. Electron. Mater. 8/2015) | Request PDF
Nanowire Networks: Three‐Dimensional SnO2 Nanowire Networks for Multifunctional Applications: From High‐Temperature Stretchable Ceramics to Ultraresponsive Sensors (Adv. Electron. Mater. 8/2015) | Request PDF

Unique CoS hierarchitectures for high-performance lithium ion batteries -  CrystEngComm (RSC Publishing)
Unique CoS hierarchitectures for high-performance lithium ion batteries - CrystEngComm (RSC Publishing)

In situ analysis of catalyst composition during gold catalyzed GaAs  nanowire growth | Nature Communications
In situ analysis of catalyst composition during gold catalyzed GaAs nanowire growth | Nature Communications

www.rsc.org/nanoscale
www.rsc.org/nanoscale

www.rsc.org/nanoscale
www.rsc.org/nanoscale

Controlling Bi-Provoked Nanostructure Formation in GaAs/GaAsBi Core–Shell  Nanowires
Controlling Bi-Provoked Nanostructure Formation in GaAs/GaAsBi Core–Shell Nanowires